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The Abl SH2-kinase linker naturally adopts a conformation competent for SH3 domain binding

机译:Abl SH2激酶接头自然采用一种能够与SH3结构域结合的构象

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摘要

The core of the Abelson tyrosine kinase (c-Abl) is structurally similar to Src-family kinases where SH3 and SH2 domains pack against the backside of the kinase domain in the down-regulated conformation. Both kinase families depend upon intramolecular association of SH3 with the linker joining the SH2 and kinase domains for suppression of kinase activity. Hydrogen deuterium exchange (HX) and mass spectrometry (MS) were used to probe intramolecular interaction of the c-Abl SH3 domain with the linker in recombinant constructs lacking the kinase domain. Under physiological conditions, the c-Abl SH3 domain undergoes partial unfolding, which is stabilized by ligand binding, providing a unique assay for SH3:linker interaction in solution. Using this approach, we observed dynamic association of the SH3 domain with the linker in the absence of the kinase domain. Truncation of the linker before W254 completely prevented cis-interaction with SH3, while constructs containing amino acids past this point showed SH3:linker interactions. The observation that the Abl linker sequence exhibits SH3-binding activity in the absence of the kinase domain is unique to Abl and was not observed with Src-family kinases. These results suggest that SH3:linker interactions may have a more prominent role in Abl regulation than in Src kinases, where the down-regulated conformation is further stabilized by a second intramolecular interaction between the C-terminal tail and the SH2 domain.
机译:Abelson酪氨酸激酶(c-Abl)的核心在结构上类似于Src家族激酶,其中SH3和SH2结构域在下调的构象中紧靠激酶结构域的背面。两个激酶家族均依赖于SH3的分子内缔合以及连接SH2和激酶结构域的接头来抑制激酶活性。氢氘交换(HX)和质谱(MS)用于探测c-Abl SH3结构域与缺少激酶结构域的重组构建体中接头的分子内相互作用。在生理条件下,c-Abl SH3结构域经历部分解折叠,通过配体结合得以稳定,从而为溶液中SH3:接头相互作用提供了独特的检测方法。使用这种方法,我们观察到在没有激酶结构域的情况下SH3结构域与接头的动态关联。 W254之前,连接子的截短完全阻止了与SH3的顺式相互作用,而超过此点的氨基酸构建体显示出SH3:连接子的相互作用。在不存在激酶结构域的情况下,Abl接头序列表现出SH3结合活性的观察是Abl所独有的,而对于Src家族激酶则没有观察到。这些结果表明,SH3:接头相互作用在Abl调节中可能比在Src激酶中更重要,后者的下调构象通过C末端尾部和SH2结构域之间的第二次分子内相互作用进一步稳定。

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